Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia, PA 19104, USA.
Proc Natl Acad Sci U S A. 2013 Jan 8;110(2):678-83. doi: 10.1073/pnas.1215033110. Epub 2012 Dec 24.
Agrobacterium tumefaciens is a broad host range plant pathogen that combinatorially recognizes diverse host molecules including phenolics, low pH, and aldose monosaccharides to activate its pathogenic pathways. Chromosomal virulence gene E (chvE) encodes a periplasmic-binding protein that binds several neutral sugars and sugar acids, and subsequently interacts with the VirA/VirG regulatory system to stimulate virulence (vir) gene expression. Here, a combination of genetics, X-ray crystallography, and isothermal calorimetry reveals how ChvE binds the different monosaccharides and also shows that binding of sugar acids is pH dependent. Moreover, the potency of a sugar for vir gene expression is modulated by a transport system that also relies on ChvE. These two circuits tune the overall system to respond to sugar concentrations encountered in vivo. Finally, using chvE mutants with restricted sugar specificities, we show that there is host variation in regard to the types of sugars that are limiting for vir induction.
根瘤农杆菌是一种广泛宿主范围的植物病原体,它通过组合识别多种宿主分子,包括酚类化合物、低 pH 值和醛糖单糖,来激活其致病途径。染色体毒力基因 E(chvE)编码一种周质结合蛋白,可结合多种中性糖和糖酸,随后与 VirA/VirG 调节系统相互作用,刺激毒力(vir)基因表达。在这里,遗传学、X 射线晶体学和等温量热法的组合揭示了 ChvE 如何结合不同的单糖,并且还表明糖酸的结合依赖于 pH 值。此外,糖对 vir 基因表达的效力受依赖于 ChvE 的运输系统调节。这两个电路调节整个系统以响应体内遇到的糖浓度。最后,使用具有受限糖特异性的 chvE 突变体,我们表明在vir 诱导中限制糖的类型方面存在宿主变异。